CN112669675B - A spool formula intelligent teaching link plate structure for tourism management - Google Patents
A spool formula intelligent teaching link plate structure for tourism management Download PDFInfo
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Abstract
The invention discloses a scroll type intelligent teaching hanging plate structure for tourism management, which belongs to the technical field of teaching hanging plates and comprises a panel mechanism and a bottom plate mechanism, wherein the back of the panel mechanism is fixedly connected with the bottom plate mechanism through a bolt; the panel mechanism comprises an upper plate body, a folding plate body, a lower plate body, a tail shaft fixing assembly and a main shaft fixing assembly, wherein the main shaft fixing assembly is fixedly connected to the outer side wall of the upper plate body through bolts, the lower plate body is arranged below the upper plate body, the lower end of the lower plate body is connected with the tail shaft fixing assembly, and the folding plate body is fixedly connected between the lower plate body and the upper plate body. Automatic storage and display are realized; adopt elevator motor to drive the expansion of folded sheet plate body, the panel is whole to the expansion length of spool and increase, can demonstrate the content of spool completely, satisfies the teaching demand.
Description
Technical Field
The invention relates to the technical field of teaching hanging plates, in particular to a scroll type intelligent teaching hanging plate structure for tourism management.
Background
In the current tourism management practice, some panels that are used for showing tourist attraction history leather, custom and view characteristic all are fixed form, in the tourism management teaching process, the content that needs the show is many, consequently need have more space, otherwise can seem crowded embarrassment, it is more loaded down with trivial details that some current panels change show content, also be difficult to deposit after using up, especially to the scroll formula historical relic of ancient times, for example, the scroll, book etc. length is longer, its both ends encapsulation and epaxial, can open the scroll through the rotation axis or accomodate, ordinary show needs the mounting, but the mounting can destroy the original state of historical relic.
The patent number is CN201811354783.8 discloses a spool formula intelligence teaching link plate for in tourism management practice, including the receiver, receiver inner wall one side is equipped with first recess, be equipped with the bearing in the first recess, the rotation axis has been cup jointed in the bearing, the rotation axis is close to bearing one end and is equipped with drive arrangement, rotatory axial receiver extends the end and is equipped with the second recess, second recess female connection has the fixed block, fixed block one end is equipped with the spool, the outside winding of spool has the show batching, the receiver is kept away from drive arrangement one end and is equipped with the fluting, fluting female connection has the cover, receiver outer wall upper end is equipped with hangs and detains, the show groove has been seted up to receiver lower extreme inner wall, show groove both sides parcel one deck cavernosum. However, the above patent still needs to manually open the scroll, and then hang the scroll on the link plate, and intelligent, degree of automation is low, and to some historical relics that preserve with the scroll form, the structure is very easily damaged in the manual exhibition of opening, generally speaking, receives the space restriction, and link plate length of show all is certain, leads to ordinary teaching link plate can't carry out comprehensive show to the spool content of length.
Disclosure of Invention
The invention aims to provide a scroll type intelligent teaching hanging plate structure for tourism management, wherein a driving assembly drives two shaft end fixing sleeves to move towards the middle, two ends of a scroll are inserted into the shaft end fixing sleeves, and a winding motor drives the shaft end fixing sleeves to rotate, so that the scroll is unfolded, and automatic storage and display are realized; adopt elevator motor to drive the expansion of folded sheet plate body, the panel is whole to the expansion length of spool and increase, can demonstrate the content of spool completely, satisfies the teaching demand to solve the problem that proposes among the above-mentioned background.
In order to achieve the purpose, the invention provides the following technical scheme: a scroll type intelligent teaching hanging plate structure for tourism management comprises a panel mechanism and a bottom plate mechanism, wherein the back of the panel mechanism is fixedly connected with the bottom plate mechanism through a bolt;
the panel mechanism comprises an upper plate body, a folding plate body, a lower plate body, a tail shaft fixing assembly and a main shaft fixing assembly, wherein the main shaft fixing assembly is fixedly connected to the outer side wall of the upper plate body through bolts;
the tail shaft fixing assembly comprises a tail shaft sleeve and a tail shaft fixing motor, the tail shaft sleeve is rotatably connected to the lower plate body through a rotating shaft, and the rotating shaft between the tail shaft sleeve and the lower plate body is connected with the tail shaft fixing motor through a coupler;
the main shaft fixing component comprises linear double-sliding rails, a U-shaped sliding plate, a driving assembly, a supporting plate, a shaft end fixing sleeve and a winding motor, the linear double-sliding rails are fixedly connected to the outer side wall of the upper plate body through bolts, the two U-shaped sliding plates are connected to the linear double-sliding rails in a sliding mode, the driving assembly is connected between the U-shaped sliding plates and the linear double-sliding rails, the supporting plate is fixedly connected to the side wall of the U-shaped sliding plate through bolts, the shaft end fixing sleeve is rotatably connected to the middle of the supporting plate through a bearing, the winding motor is mounted on the supporting plate, and a motor shaft of the winding motor is fixedly connected with the shaft end fixing sleeve;
the bottom plate mechanism comprises a back plate, lifting slide rails, an upper slide block, a lower slide block, a ball screw assembly, a bottom plate body, a motor mounting plate and a lifting motor, wherein the side wall of the back plate is fixedly connected with the two lifting slide rails which are parallel to each other through bolts;
the ball screw subassembly includes levogyration screw rod, dextrorotation screw rod, nut and linking piece, through shaft coupling interconnect between levogyration screw rod and the dextrorotation screw rod, and all be connected with through the nut on levogyration screw rod and the dextrorotation screw rod and link up the piece, link up through bearing swivelling joint between piece and the nut, link up piece fixed connection upper plate body on the levogyration screw rod, link up piece fixed connection lower plate body on the dextrorotation screw rod.
Furthermore, the folding plate body is a piano plate.
Further, the driving assembly comprises a driving rack, a driving motor and a driving gear, the driving motor is installed on the U-shaped sliding plate and connected with the driving gear, the driving rack is fixedly connected to one side of the linear double-sliding-rail, and the driving gear is meshed with the driving rack.
Furthermore, the shaft end fixing sleeve is a cylinder with one open end and the other closed end.
Furthermore, the upper sliding block is located above the lower sliding block, the upper sliding block is fixedly connected with the upper plate body through a bolt, and the lower sliding block is fixedly connected with the lower plate body through a bolt.
Furthermore, the upper end and the lower end of the ball screw assembly are both rotatably connected with an end plate through a bearing, and the two end plates are respectively and fixedly connected to the upper end and the lower end of the back plate.
Furthermore, the four corners of the back plate are connected with locking bolts.
Furthermore, the top end of the back plate is bent backwards to form a U-shaped groove with a downward opening.
Furthermore, a notch is formed in the middle of the upper end of the upper plate body, and a shaft mounting assembly is arranged at the notch.
Further, the shaft mounting assembly comprises a rotating motor, a main shaft, side plates, a rotary table and supporting claws, the two side plates are fixedly connected to the upper plate body, the main shaft is rotatably connected between the two side plates, the end portion of the main shaft is connected with the rotating motor, the rotating motor is installed on the side plates, the rotary table is fixedly connected to the middle of the main shaft, and the supporting claws extending outwards are arranged on the rotary table.
Compared with the prior art, the invention has the beneficial effects that:
1. according to the scroll type intelligent teaching hanging plate structure for travel management, the two shaft end fixing sleeves are driven to move towards the middle through the driving assembly, the two ends of the scroll are inserted into the shaft end fixing sleeves, and the winding motor drives the shaft end fixing sleeves to rotate, so that the scroll is unfolded, and automatic storage and display are realized;
2. according to the scroll type intelligent teaching hanging plate structure for tourism management, the lifting motor is adopted to drive the ball screw assembly to rotate, the connecting blocks on the left-handed screw and the right-handed screw move in opposite directions, so that the distance between the upper plate body and the lower plate body is increased, the folding plate body is unfolded, the whole panel is lengthened for the unfolding length of the scroll, the content of the scroll can be completely displayed, and the teaching requirement is met.
Drawings
Fig. 1 is an overall structure diagram of a scroll type intelligent teaching hanging plate structure for travel management in the first embodiment of the present invention;
fig. 2 is a structural view of a panel mechanism of a scroll type intelligent teaching hanging plate structure for tourism management in the first embodiment of the present invention;
fig. 3 is a structure diagram of a spindle fixing assembly of a scroll type intelligent teaching hanging plate structure for tourism management in the first embodiment of the present invention;
FIG. 4 is an enlarged view of a portion of FIG. 2;
FIG. 5 is a structural diagram of a tail shaft fixing assembly of the reel type intelligent teaching hanging plate structure for tourism management in the first embodiment of the present invention;
FIG. 6 is an assembly diagram of the bottom plate mechanism of the scroll type intelligent teaching hanging plate structure for tourism management of the invention;
FIG. 7 is an exploded view of the bottom plate mechanism of the reel type intelligent teaching hanging plate structure for tourism management of the present invention;
FIG. 8 is a structure view of a ball screw assembly of the present invention for a scroll type intelligent teaching hanging plate structure for tourism management;
fig. 9 is an overall structural view of a scroll type intelligent teaching hanging plate structure for travel management in the second embodiment of the present invention;
fig. 10 is a structural view of a shaft mounting assembly of the reel type intelligent teaching hanging plate structure for tourism management in the second embodiment of the present invention.
In the figure: 1. a panel mechanism; 11. an upper plate body; 111. a notch; 12. folding the plate body; 13. a lower plate body; 14. a tail shaft fixing component; 141. a tail shaft sleeve; 142. the tail shaft is fixed with a motor; 15. a spindle fixing assembly; 151. a linear dual slide rail; 152. a U-shaped slide plate; 153. a drive assembly; 1531. a driving rack; 1532. a drive motor; 1533. a drive gear; 154. a support plate; 155. fixing a shaft end sleeve; 156. a winding motor; 2. a bottom plate mechanism; 21. a back plate; 211. locking the bolt; 22. lifting the slide rail; 23. an upper slide block; 24. a lower slide block; 25. a ball screw assembly; 251. a left-handed screw; 252. a right-handed screw; 253. a nut; 254. a joining block; 26. a bottom plate body; 27. a motor mounting plate; 28. a lifting motor; 3. a shaft assembly is installed; 31. a rotating electric machine; 32. a main shaft; 33. a side plate; 34. a turntable; 35. and (4) supporting the claw.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Example one
Referring to fig. 1 to 5, a scroll type intelligent teaching hanging plate structure for tourism management comprises a panel mechanism 1 and a bottom plate mechanism 2, wherein the back of the panel mechanism 1 is fixedly connected with the bottom plate mechanism 2 through bolts; the panel mechanism 1 comprises an upper plate body 11, a folding plate body 12, a lower plate body 13, a tail shaft fixing assembly 14 and a main shaft fixing assembly 15, the outer side wall of the upper plate body 11 is fixedly connected with the main shaft fixing assembly 15 through a bolt, the lower plate body 13 is arranged below the upper plate body 11, the lower end of the lower plate body 13 is connected with the tail shaft fixing assembly 14, the folding plate body 12 is fixedly connected between the lower plate body 13 and the upper plate body 11, and the folding plate body 12 is a piano plate.
The tail shaft fixing assembly 14 comprises a tail shaft sleeve 141 and a tail shaft fixing motor 142, the tail shaft sleeve 141 is rotatably connected onto the lower plate body 13 through a rotating shaft, the rotating shaft between the tail shaft sleeve 141 and the lower plate body 13 is connected with the tail shaft fixing motor 142 through a coupler, a tail shaft at the lower end of the scroll moves downwards until the tail shaft is located at the lower end of the lower plate body 13, and the tail shaft fixing motor 142 drives the tail shaft sleeve 141 to rotate, so that the tail shaft is limited in the tail shaft sleeve 141, and the tail shaft is fixed.
The spindle fixing assembly 15 includes a linear double-sliding rail 151, a U-shaped sliding plate 152, a driving assembly 153, a supporting plate 154, a shaft end fixing sleeve 155 and a winding motor 156, the outer side wall of the upper plate 11 is fixedly connected with the linear double-sliding rail 151 through bolts, the linear double-sliding rail 151 is slidably connected with two U-shaped sliding plates 152, the driving assembly 153 is connected between the U-shaped sliding plate 152 and the linear double-sliding rail 151, the driving assembly 153 includes a driving rack 1531, a driving motor 1532 and a driving gear 1533, the U-shaped sliding plate 152 is provided with the driving motor 1532, the driving motor 1532 is connected with the driving gear 1533, one side of the linear double-sliding rail 151 is fixedly connected with the driving rack 1531, the driving gear 1533 is engaged with the driving rack 1531, the driving motor 1532 drives the driving gear 1533 to rotate along the driving rack 1531 to further drive the U-shaped sliding plate 152 to slide along the linear double-sliding rail 151, the supporting plate 154 is fixedly connected with the side wall of the U-sliding plate 152 through bolts, the middle part of backup pad 154 has the fixed cover 155 of axle head through bearing swivelling joint, installs winding motor 156 on the backup pad 154, and winding motor 156's the fixed cover 155 of motor shaft fixed connection axle head, the fixed cover 155 of axle head is one end opening, the barrel that the other end is sealed, is provided with the rubber layer on the inner wall of the fixed cover 155 of axle head for peg graft spool rear fixed spool's both ends.
Referring to fig. 6 to 8, the bottom plate mechanism 2 includes a back plate 21, lifting slide rails 22, an upper slide block 23, a lower slide block 24, a ball screw assembly 25, a bottom plate body 26, a motor mounting plate 27 and a lifting motor 28, two lifting slide rails 22 parallel to each other are fixedly connected to a side wall of the back plate 21 through bolts, an upper slide block 23 and a lower slide block 24 are slidably connected to each lifting slide rail 22, the upper slide block 23 is located above the lower slide block 24, the upper slide block 23 is fixedly connected to the upper plate body 11 through bolts, the lower slide block 24 is fixedly connected to the lower plate body 13 through bolts, the bottom plate body 26 is fixedly connected to a lower end of the back plate 21, the ball screw assembly 25 is connected to the bottom plate body 26, the motor mounting plate 27 is fixedly connected to a lower end of the bottom plate body 26 through bolts, the lifting motor 28 is mounted on the motor mounting plate 27, and a motor shaft of the lifting motor 28 is connected to the ball screw assembly 25, the upper end and the lower end of the ball screw assembly 25 are both rotatably connected with an end plate through a bearing, the two end plates are respectively and fixedly connected with the upper end and the lower end of the back plate 21, the four corners of the back plate 21 are both connected with locking bolts 211, or the top end of the back plate 21 is bent backwards to form a U-shaped groove with a downward opening, and the locking bolts 211 and the U-shaped groove are both installation structures of the back plate 21; along with the increase of the unfolded length of the scroll, the lifting motor 28 drives the ball screw assembly 25 to rotate, and the connecting blocks 254 on the left-handed screw 251 and the right-handed screw 252 move in opposite directions, so that the distance between the upper plate body 11 and the lower plate body 13 is increased, the folding plate body 12 is unfolded, the overall unfolded length of the scroll of the panel is increased, the content of the scroll can be completely displayed, and the teaching requirement is met.
The ball screw assembly 25 comprises a left-handed screw 251, a right-handed screw 252, a nut 253 and a connecting block 254, the left-handed screw 251 and the right-handed screw 252 are connected with each other through a coupler, the left-handed screw 251 and the right-handed screw 252 are both connected with the connecting block 254 through the nut 253, the connecting block 254 and the nut 253 are rotatably connected through a bearing, the connecting block 254 on the left-handed screw 251 is fixedly connected with the upper plate body 11, and the connecting block 254 on the right-handed screw 252 is fixedly connected with the lower plate body 13.
Example two
Referring to fig. 9, a scroll type intelligent teaching hanging plate structure for tourism management comprises a panel mechanism 1 and a bottom plate mechanism 2, wherein the back of the panel mechanism 1 is fixedly connected with the bottom plate mechanism 2 through bolts; the panel mechanism 1 comprises an upper plate body 11, a folding plate body 12, a lower plate body 13, a tail shaft fixing assembly 14 and a main shaft fixing assembly 15, the outer side wall of the upper plate body 11 is fixedly connected with the main shaft fixing assembly 15 through a bolt, the lower plate body 13 is arranged below the upper plate body 11, the lower end of the lower plate body 13 is connected with the tail shaft fixing assembly 14, the folding plate body 12 is fixedly connected between the lower plate body 13 and the upper plate body 11, and the folding plate body 12 is a piano plate.
The tail shaft fixing component 14 comprises a tail shaft sleeve 141 and a tail shaft fixing motor 142, the tail shaft sleeve 141 is connected to the lower board body 13 through a rotating shaft in a rotating mode, the rotating shaft between the tail shaft sleeve 141 and the lower board body 13 is connected with the tail shaft fixing motor 142 through a coupler, the tail shaft at the lower end of the scroll moves downwards until the tail shaft is located at the lower end of the lower board body 13, the tail shaft fixing motor 142 drives the tail shaft sleeve 141 to rotate, therefore, the tail shaft is limited in the tail shaft sleeve 141, and the tail shaft is fixed.
The spindle fixing assembly 15 includes a linear double-sliding rail 151, a U-shaped sliding plate 152, a driving assembly 153, a supporting plate 154, a shaft end fixing sleeve 155 and a winding motor 156, the outer side wall of the upper plate 11 is fixedly connected with the linear double-sliding rail 151 through bolts, the linear double-sliding rail 151 is slidably connected with two U-shaped sliding plates 152, the driving assembly 153 is connected between the U-shaped sliding plate 152 and the linear double-sliding rail 151, the driving assembly 153 includes a driving rack 1531, a driving motor 1532 and a driving gear 1533, the U-shaped sliding plate 152 is provided with the driving motor 1532, the driving motor 1532 is connected with the driving gear 1533, one side of the linear double-sliding rail 151 is fixedly connected with the driving rack 1531, the driving gear 1533 is engaged with the driving rack 1531, the driving motor 1532 drives the driving gear 1533 to rotate along the driving rack 1531 to further drive the U-shaped sliding plate 152 to slide along the linear double-sliding rail 151, the supporting plate 154 is fixedly connected with the side wall of the U-sliding plate 152 through bolts, the middle part of backup pad 154 has the fixed cover 155 of axle head through bearing swivelling joint, installs winding motor 156 on the backup pad 154, and winding motor 156's the fixed cover 155 of motor shaft fixed connection axle head, the fixed cover 155 of axle head is one end opening, the barrel that the other end is sealed, is provided with the rubber layer on the inner wall of the fixed cover 155 of axle head for peg graft spool rear fixed spool's both ends.
Referring to fig. 6 to 8, the bottom plate mechanism 2 includes a back plate 21, lifting slide rails 22, an upper slide block 23, a lower slide block 24, a ball screw assembly 25, a bottom plate body 26, a motor mounting plate 27 and a lifting motor 28, two lifting slide rails 22 parallel to each other are fixedly connected to a side wall of the back plate 21 through bolts, an upper slide block 23 and a lower slide block 24 are slidably connected to each lifting slide rail 22, the upper slide block 23 is located above the lower slide block 24, the upper slide block 23 is fixedly connected to the upper plate body 11 through bolts, the lower slide block 24 is fixedly connected to the lower plate body 13 through bolts, the bottom plate body 26 is fixedly connected to a lower end of the back plate 21, the ball screw assembly 25 is connected to the bottom plate body 26, the motor mounting plate 27 is fixedly connected to a lower end of the bottom plate body 26 through bolts, the lifting motor 28 is mounted on the motor mounting plate 27, and a motor shaft of the lifting motor 28 is connected to the ball screw assembly 25, the upper end and the lower end of the ball screw assembly 25 are both rotatably connected with an end plate through a bearing, the two end plates are respectively and fixedly connected with the upper end and the lower end of the back plate 21, the four corners of the back plate 21 are both connected with locking bolts 211, or the top end of the back plate 21 is bent backwards to form a U-shaped groove with a downward opening, and the locking bolts 211 and the U-shaped groove are both installation structures of the back plate 21; along with the increase of the length of the unfolded scroll, the lifting motor 28 drives the ball screw assembly 25 to rotate, and the connecting blocks 254 on the left-handed screw 251 and the right-handed screw 252 move in opposite directions, so that the distance between the upper plate body 11 and the lower plate body 13 is increased, the folding plate body 12 is unfolded, the whole panel is increased according to the length of the unfolded scroll, the content of the scroll can be completely displayed, and the teaching requirement is met.
The ball screw assembly 25 comprises a left-handed screw 251, a right-handed screw 252, a nut 253 and a connecting block 254, the left-handed screw 251 and the right-handed screw 252 are connected with each other through a coupler, the left-handed screw 251 and the right-handed screw 252 are both connected with the connecting block 254 through the nut 253, the connecting block 254 and the nut 253 are rotatably connected through a bearing, the connecting block 254 on the left-handed screw 251 is fixedly connected with the upper plate body 11, and the connecting block 254 on the right-handed screw 252 is fixedly connected with the lower plate body 13.
Referring to fig. 10, a notch 111 is formed in the middle of the upper end of the upper plate 11, a shaft mounting assembly 3 is arranged at the notch 111, the shaft mounting assembly 3 includes a rotating motor 31, a main shaft 32, side plates 33, a turntable 34 and supporting claws 35, the two side plates 33 are fixedly connected to the upper plate 11, the main shaft 32 is rotatably connected between the two side plates 33, the end of the main shaft 32 is connected with the rotating motor 31, the rotating motor 31 is mounted on the side plates 33, the turntable 34 is fixedly connected to the middle of the main shaft 32, the supporting claws 35 extending outwards are arranged on the turntable 34, the supporting claws 35 are in a hook shape and have a plurality of supporting claws 35, the plurality of supporting claws 35 are distributed in an annular shape outside the turntable 34, a scroll to be displayed is placed on the supporting claws 35, the rotating motor 31 drives the supporting claws 35 to rotate until the scroll is placed between the two shaft end fixing sleeves 155, and automatic display of scroll type picture scroll is realized.
In summary, the following steps: according to the scroll type intelligent teaching hanging plate structure for travel management, the two shaft end fixing sleeves 155 are driven to move towards the middle through the driving assembly 153, the two ends of a scroll are inserted into the shaft end fixing sleeves 155, and the winding motor 156 drives the shaft end fixing sleeves 155 to rotate, so that the scroll is unfolded, and automatic storage and display are realized; adopt elevator motor 28 to drive ball screw subassembly 25 rotatory, the joint piece 254 on levogyration screw rod 251 and the dextrorotation screw rod 252 reverse movement to drive the distance increase between the upper plate body 11 and the lower plate body 13, folding plate body 12 expandes, and the panel is whole to the expansion length of spool and increase, can demonstrate the content of spool completely, satisfies the teaching demand.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered as the technical solutions and the inventive concepts of the present invention within the technical scope of the present invention.
Claims (7)
1. A scroll type intelligent teaching hanging plate structure for tourism management is characterized by comprising a panel mechanism (1) and a bottom plate mechanism (2), wherein the back of the panel mechanism (1) is fixedly connected with the bottom plate mechanism (2) through bolts;
the panel mechanism (1) comprises an upper plate body (11), a folding plate body (12), a lower plate body (13), a tail shaft fixing assembly (14) and a main shaft fixing assembly (15), wherein the outer side wall of the upper plate body (11) is fixedly connected with the main shaft fixing assembly (15) through bolts, the lower plate body (13) is arranged below the upper plate body (11), the lower end of the lower plate body (13) is connected with the tail shaft fixing assembly (14), and the folding plate body (12) is fixedly connected between the lower plate body (13) and the upper plate body (11);
the tail shaft fixing assembly (14) comprises a tail shaft sleeve (141) and a tail shaft fixing motor (142), the tail shaft sleeve (141) is rotatably connected to the lower plate body (13) through a rotating shaft, and the rotating shaft between the tail shaft sleeve (141) and the lower plate body (13) is connected with the tail shaft fixing motor (142) through a coupler;
the spindle fixing assembly (15) comprises linear double sliding rails (151), U-shaped sliding plates (152), a driving assembly (153), a supporting plate (154), a shaft end fixing sleeve (155) and a winding motor (156), the outer side wall of the upper plate body (11) is fixedly connected with the linear double sliding rails (151) through bolts, the linear double sliding rails (151) are connected with the two U-shaped sliding plates (152) in a sliding mode, the driving assembly (153) is connected between the U-shaped sliding plates (152) and the linear double sliding rails (151), the supporting plate (154) is fixedly connected onto the side wall of each U-shaped sliding plate (152) through bolts, the middle part of each supporting plate (154) is rotatably connected with the shaft end fixing sleeve (155) through bearings, the winding motor (156) is installed on each supporting plate (154), and a motor shaft of each winding motor (156) is fixedly connected with the shaft end fixing sleeve (155);
the bottom plate mechanism (2) comprises a back plate (21), a lifting slide rail (22), an upper slide block (23), a lower slide block (24), a ball screw assembly (25), a bottom plate body (26), a motor mounting plate (27) and a lifting motor (28), two parallel lifting slide rails (22) are fixedly connected to the side wall of the back plate (21) through bolts, an upper slide block (23) and a lower slide block (24) are connected to each lifting slide rail (22) in a sliding manner, the lower end of the back plate (21) is fixedly connected with a bottom plate body (26), the bottom plate body (26) is connected with a ball screw assembly (25), the lower end of the bottom plate body (26) is fixedly connected with a motor mounting plate (27) through bolts, a lifting motor (28) is arranged on the motor mounting plate (27), and a motor shaft of the lifting motor (28) is connected with the ball screw assembly (25);
the ball screw component (25) comprises a left-handed screw (251), a right-handed screw (252), a nut (253) and a connecting block (254), the left-handed screw (251) and the right-handed screw (252) are connected with each other through a coupler, the left-handed screw (251) and the right-handed screw (252) are both connected with the connecting block (254) through the nut (253), the connecting block (254) is rotatably connected with the nut (253) through a bearing, the connecting block (254) on the left-handed screw (251) is fixedly connected with an upper board body (11), the connecting block (254) on the right-handed screw (252) is fixedly connected with a lower board body (13), the driving assembly (153) comprises a driving rack (1531), a driving motor (1532) and a driving gear (1533), a driving motor (1532) is installed on a U-shaped sliding board (152), and the driving motor (1532) is connected with the driving gear (1533), one side fixedly connected with drive rack (1531) of linear double slide rail (151), drive gear (1533) and drive rack (1531) intermeshing, breach (111) are seted up at the upper end middle part of upper plate body (11), and breach (111) department is provided with dress axle subassembly (3), dress axle subassembly (3) include rotating electrical machines (31), main shaft (32), curb plate (33), carousel (34) and support claw (35), and two curb plate (33) fixed connection are on upper plate body (11), and swivelling joint has main shaft (32) between two curb plate (33), and the end connection of main shaft (32) has rotating electrical machines (31), and rotating electrical machines (31) are installed on curb plate (33), and the middle part fixedly connected with carousel (34) of main shaft (32), are provided with outside extension support claw (35) on carousel (34).
2. The intelligent hanging board structure for tourism management in roll type according to claim 1, wherein the folding board body (12) is an organ board.
3. The intelligent hanging board structure for tourist management of scroll type teaching as claimed in claim 1, wherein said shaft end fixing sleeve (155) is a cylinder with one end open and the other end closed.
4. The intelligent scroll-type teaching hanging plate structure for travel management as claimed in claim 1, wherein the upper slider (23) is located above the lower slider (24), and the upper slider (23) is fixedly connected to the upper plate body (11) by bolts and the lower slider (24) is fixedly connected to the lower plate body (13) by bolts.
5. The intelligent hanging board structure for tourist management of roll type according to claim 1, wherein the ball screw assembly (25) is rotatably connected at upper and lower ends thereof with an end plate via a bearing, and the two end plates are fixedly connected to the upper and lower ends of the back plate (21), respectively.
6. The intelligent scroll type teaching hanging plate structure for tourism management as claimed in claim 1, wherein the back plate (21) is connected with locking bolts (211) at four corners.
7. The intelligent scroll type teaching hanging plate structure for tourism management as claimed in claim 1, wherein the top end of the back plate (21) is bent backwards to form a U-shaped groove with a downward opening.
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